首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2010 >EXTRACTING CYLINDER INDIVIDUAL COMBUSTION DATA FROM A HIGH PRECISION TORQUE SENSOR
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EXTRACTING CYLINDER INDIVIDUAL COMBUSTION DATA FROM A HIGH PRECISION TORQUE SENSOR

机译:从高精度扭矩传感器中提取气缸个人燃烧数据

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A high precision torque sensor is used for extracting combustion timing information from cylinder individual pressure estimates constructed from the torque measurements. A combination of physics-based and data driven modeling is used where the physical part of the model is based on equations describing contributions of inertial and gas forces while the flexing of the crankshaft, which has rather complex dynamics, is modeled using the data driven approach. The first part of the study shows the derivation of the models and how well the torque at the sensor position can be estimated from the pressures in the four cylinders. The second part demonstrates how it is possible to reconstruct cylinder individual torque and pressure by inverting the pressure to torque model. Going from measured torque to pressure in each cylinder is not trivial since the inverted model is ill conditioned around top dead centre which causes large errors where the precision is the most needed. A parameterized combustion model is therefore introduced to improve the signal to noise ratio in the estimated parameters. The proposed method for detecting combustion demonstrated good results with a coefficient of determination of 0.95 against "true" combustion phasing.
机译:高精度扭矩传感器用于从根据扭矩测量结果构建的气缸单个压力估算值中提取燃烧正时信息。结合了基于物理的模型和数据驱动的模型,其中模型的物理部分基于描述惯性力和气体力贡献的方程,而使用数据驱动的方法对曲轴的挠曲(动力学相当复杂)进行建模。研究的第一部分显示了模型的推导以及可以从四个气缸中的压力估算传感器位置的扭矩的程度。第二部分演示如何通过将压力转换为扭矩模型来重建气缸的单个扭矩和压力。从测量的扭矩到每个气缸的压力并非易事,因为倒置模型不适用于上止点,这会导致较大的误差,而这正是最需要精度的地方。因此,引入了参数化燃烧模型以改善估计参数中的信噪比。所提出的用于检测燃烧的方法表现出良好的结果,相对于“真实”燃烧定相,确定系数为0.95。

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